參數(shù)資料
型號(hào): LT3461AES6
廠商: LINEAR TECHNOLOGY CORP
元件分類: 穩(wěn)壓器
英文描述: 1.3MHz/3MHz Step-Up DC/DC Converters with Integrated Schottky in ThinSOT
中文描述: 0.6 A SWITCHING REGULATOR, 3900 kHz SWITCHING FREQ-MAX, PDSO6
封裝: PLASTIC, MO-193, TSOT-23, 6 PIN
文件頁(yè)數(shù): 5/8頁(yè)
文件大小: 149K
代理商: LT3461AES6
LT3461/LT3461A
5
3461af
Inrush Current
The LT3461 has a built-in Schottky diode. When supply
voltage is applied to the V
IN
pin, the voltage difference
between V
IN
and V
OUT
generates inrush current flowing
from input through the inductor and the Schottky diode to
charge the output capacitor. The maximum nonrepetitive
surge current the Schottky diode in the LT3461 can
sustain is 1.5A. The selection of inductor and capacitor
value should ensure the peak of the inrush current to be
below 1.5A. In addition, turn-on of the LT3461 should be
delayed until the inrush current is less than the maximum
current limit. The peak inrush current can be calculated as
follows:
I
V
L
C
L
C
P
IN
=
–0 6
exp
1
2
1
π
where L is the inductance, r is the resistance of the
inductor and C is the output capacitance.
Table 3 gives inrush peak currents for some component
selections.
Table 3. Inrush Peak Current
V
IN
(V)
5
5
L (
μ
H)
4.7
10
C (
μ
F)
1
1
I
P
(A)
1.1
0.9
Thermal Considerations
Significant power dissipation can occur on the LT3461
and LT3461A, particularly at high input voltage. Device
load, voltage drops in the power path components, and
switching losses are the major contributors. It is impor-
tant to measure device power dissipation in an application
to ensure that the LT3461 does not exceed the absolute
maximum operating junction temperature of 125
°
C over
the operating ambient temperature range. Generally, for
supply voltages below 5V the integrated current limit
function provides adequate protection for nonfault condi-
tions. For supply voltages above 5V, Figures 3a and 3b
show the recommended operating region of the LT3461
and LT3461A, respectively. These graphs are based
on 250mW on-chip dissipation. Improvement of these
APPLICATIOU
W
U
U
numbers can be expected if the LT3461 is supplied from a
separate low voltage rail.
Figure 3a. LT3461 Operating Region
Figure 3b. LT3461A Operating Region
V
OUT
(V)
6
I
O
80
120
38
3461 F01a
40
0
14
22
30
160
V
IN
>15V
V
IN
= 12V
V
IN
= 8V
V
IN
= 5V
V
OUT
(V)
6
I
O
80
120
38
3461 F01b
40
0
14
22
30
160
V
IN
>15V
V
IN
= 12V
V
IN
= 8V
V
IN
= 5V
Switching Frequency
The key difference between the LT3461 and LT3461A is the
faster switching frequency of the LT3461A. At 3MHz, the
LT3461A switches at twice the rate of the LT3461. The
higher switching frequency of the LT3461A allows physi-
cally smaller inductors and capacitors to be used in a given
application, but with a slight decrease in efficiency and
maximum output current when compared to the LT3461.
Generally if efficiency and maximum output current are
crucial, or a high output voltage is being generated, the
LT3461 should be used. If application size and cost are
more important, the LT3461A will be the better choice.
相關(guān)PDF資料
PDF描述
LT3461ES6 1.3MHz/3MHz Step-Up DC/DC Converters with Integrated Schottky in ThinSOT
LT3461 1.3MHz/3MHz Step-Up DC/DC Converters with Integrated Schottky in ThinSOT
LT3461A 1.3MHz/3MHz Step-Up DC/DC Converters with Integrated Schottky in ThinSOT
LT3463A Dual Micropower DC/DC Converters with Schottky Diodes
LT3463AEDD Dual Micropower DC/DC Converters with Schottky Diodes
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